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首页> 外文期刊>Planta: An International Journal of Plant Biology >Enhanced resistance to the rice blast fungus Magnaporthe grisea conferred by expression of a cecropin A gene in transgenic rice
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Enhanced resistance to the rice blast fungus Magnaporthe grisea conferred by expression of a cecropin A gene in transgenic rice

机译:转基因水稻中天蚕素A基因的表达增强了对稻瘟病菌Magnaporthe grisea的抗性

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摘要

Cecropins are a family of antimicrobial peptides, which constitute an important key component of the immune response in insects. Here, we demonstrate that transgenic rice (Oryza sativa L.) plants expressing the cecropin A gene from the giant silk moth Hyalophora cecropia show enhanced resistance to Magnaporthe grisea, the causal agent of the rice blast disease. Two plant codon-optimized synthetic cecropin A genes, which were designed either to retain the cecropin A peptide in the endoplasmic reticulum, the ER-CecA gene, or to secrete cecropin A to the extracellular space, the Ap-CecA gene, were prepared. Both cecropin A genes were efficiently expressed in transgenic rice. The inhibitory activity of protein extracts prepared from leaves of cecropin A-expressing plants on the in vitro growth of M. grisea indicated that the cecropin A protein produced by the transgenic rice plants was biologically active. Whereas no effect on plant phenotype was observed in ER-CecA plants, most of the rice lines expressing the Ap-CecA gene were non-fertile. Cecropin A rice plants exhibited resistance to rice blast at various levels. Transgene expression of cecropin A genes was not accompanied by an induction of pathogenesis-related (PR) gene expression supporting that the transgene product itself is directly active against the pathogen. Taken together, the results presented in this study suggest that the cecropin A gene, when designed for retention of cecropin A into the endoplasmic reticulum, could be a useful candidate for protection of rice plants against the rice blast fungus M. grisea.
机译:天蚕素是抗菌肽家族,是昆虫免疫反应的重要关键组成部分。在这里,我们证明了表达来自巨型蚕蛾Hyalophora cecropia cecropin A基因的转基因水稻(Oryza sativa L.)植物显示出对稻瘟病的病原体稻瘟病菌(Magnaporthe grisea)的抗性增强。制备了两个植物密码子优化的合成天花粉蛋白A基因,其设计为将天花粉蛋白A肽保留在内质网中,即ER-CecA基因,或将天花粉蛋白A分泌至细胞外空间Ap-CecA基因。两种天蚕素A基因均在转基因水稻中有效表达。从表达天蚕素A的植物的叶子制备的蛋白质提取物对稻瘟病菌体外生长的抑制活性表明,转基因水稻植物产生的天蚕素A蛋白具有生物活性。尽管在ER-CecA植物中未观察到对植物表型的影响,但大多数表达Ap-CecA基因的水稻品系都不育。 Cecropin A水稻植株对稻瘟病表现出不同程度的抗性。 cecropin A基因的转基因表达没有伴随致病相关(PR)基因表达的诱导,支持转基因产物本身对病原体具有直接活性。两者合计,本研究中提出的结果表明,当将天花粉蛋白A基因设计成将天花粉蛋白A保留在内质网中时,它可能是保护水稻植物免受稻瘟病菌M. grisea侵害的有用候选物。

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